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使用非共价双层涂层毛细管通过毛细管电泳对肽进行高效且可重复的分析。

Efficient and reproducible analysis of peptides by capillary electrophoresis using noncovalently bilayer-coated capillaries.

作者信息

Catai Jonatan R, Somsen Govert W, de Jong Gerhardus J

机构信息

Department of Biomedical Analysis, Utrecht University, NL-3508 TB Utrecht, The Netherlands.

出版信息

Electrophoresis. 2004 Mar;25(6):817-24. doi: 10.1002/elps.200305720.

Abstract

The usefulness of a noncovalent capillary coating consisting of two layers of oppositely charged polymers for the separation of peptides with capillary electrophoresis (CE) was studied. Capillaries were coated simply by subsequently flushing with solutions of 1% m/v Polybrene and 1% v/v poly(vinylsulfonate) (PVS) forming a bilayer, which showed to produce a strong and highly reproducible electroosmotic flow (EOF) at low pH. Using this coating in combination with a background electrolyte (BGE) containing sodium phosphate (pH 2.5) and 0.01% v/v PVS, initially broadened and overlapping peaks were obtained for some test peptides. By omitting the PVS from the BGE, the peak width and shape of the peptides improved resulting in baseline separation. A systematic study of the influence of the BGE composition showed that considerable further enhancement of the separation efficiency was achieved by increasing the ionic strength of the BGE. Using a BGE of 200 mM tris(hydroxymethyl)aminomethane (Tris)-phosphate (pH 2.5) plate numbers for the peptides were in the 300 000-600 000 range and the relative standard deviation of the peptide migration times was less then 0.3% (n = 5). The use of Tris-phosphate instead of sodium phosphate allowed the current to stay within acceptable limits when 30 kV was used as separation voltage. Overall, the bilayer coating showed a remarkable EOF repeatability, as well as long-term stability. Compared to bare fused-silica capillaries the intraday and interday repeatability of migration times was very favorable and coated capillaries could be used for over a month performing analyses with low and high ionic strength BGEs without any performance deterioration. The usefulness of the bilayer-coated capillaries for the analysis of positively charged peptides was demonstrated by the fast and efficient separation of various closely related enkephalins and the baseline separation of an isomeric peptide/peptoid couple exhibiting efficiencies of over 550 000 plates.

摘要

研究了由两层带相反电荷的聚合物组成的非共价毛细管涂层在毛细管电泳(CE)分离肽中的实用性。通过依次用1%(m/v)聚凝胺溶液和1%(v/v)聚乙烯磺酸盐(PVS)溶液冲洗形成双层来简单地对毛细管进行涂层,结果表明在低pH值下能产生强大且高度可重复的电渗流(EOF)。将这种涂层与含有磷酸钠(pH 2.5)和0.01%(v/v)PVS的背景电解质(BGE)结合使用时,一些测试肽最初得到的峰变宽且重叠。通过从BGE中省略PVS,肽的峰宽和峰形得到改善,实现了基线分离。对BGE组成影响的系统研究表明,通过增加BGE的离子强度可显著进一步提高分离效率。使用200 mM三(羟甲基)氨基甲烷(Tris)-磷酸盐(pH 2.5)的BGE时,肽的塔板数在300000 - 600000范围内,肽迁移时间的相对标准偏差小于0.3%(n = 5)。当使用30 kV作为分离电压时,使用Tris-磷酸盐代替磷酸钠可使电流保持在可接受的范围内。总体而言,双层涂层显示出显著的EOF重复性以及长期稳定性。与裸熔融石英毛细管相比,迁移时间的日内和日间重复性非常好,涂层毛细管可使用一个多月,用于分析低离子强度和高离子强度的BGE,且性能无任何下降。通过快速高效地分离各种密切相关的脑啡肽以及对一对异构体肽/类肽进行基线分离(效率超过550000块塔板),证明了双层涂层毛细管在分析带正电荷肽方面的实用性。

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